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Structural Differences in Insular Cortex Reflect Vicarious Injustice Sensitivity

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  • Thomas Baumgartner
  • Anne Saulin
  • Grit Hein
  • Daria Knoch

Abstract

Sensitivity to injustice inflicted on others is a strong motivator of human social behavior. There are, however, enormous individual differences in vicarious injustice sensitivity. Some people are strongly affected when witnessing injustice, while others barely notice it, but the factors behind this heterogeneity are poorly understood. Here we examine the neuroanatomical basis of these differences using voxel-based morphometry and Freesurfer image analysis suite. Whole brain corrected analyses show that a person’s propensity to be vicariously affected by injustice to others is reflected by the gray matter volume and thickness of the bilateral mid insular cortex. The larger a person’s gray matter volume and thickness of the mid insula, the higher that person’s sensitivity to injustice experienced by others. These findings show that the individual neuroanatomy of the mid insular cortex captures a person’s predisposition to be vicariously affected by injustice, and thus adds a novel aspect to previous functional work that has linked this region to the processing of transient vicarious states.

Suggested Citation

  • Thomas Baumgartner & Anne Saulin & Grit Hein & Daria Knoch, 2016. "Structural Differences in Insular Cortex Reflect Vicarious Injustice Sensitivity," PLOS ONE, Public Library of Science, vol. 11(12), pages 1-9, December.
  • Handle: RePEc:plo:pone00:0167538
    DOI: 10.1371/journal.pone.0167538
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    References listed on IDEAS

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    1. Olga M Klimecki & Patrik Vuilleumier & David Sander, 2016. "The Impact of Emotions and Empathy-Related Traits on Punishment Behavior: Introduction and Validation of the Inequality Game," PLOS ONE, Public Library of Science, vol. 11(3), pages 1-20, March.
    2. Corrado Corradi-Dell’Acqua & Anita Tusche & Patrik Vuilleumier & Tania Singer, 2016. "Cross-modal representations of first-hand and vicarious pain, disgust and fairness in insular and cingulate cortex," Nature Communications, Nature, vol. 7(1), pages 1-12, April.
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